When something is cool, it tries to absorb energy from it's surroundings. When something is cooled off, it releases energy during that cooling process.
Dry soil holds more heat than wet soil because water has a high heat capacity, which means it takes more energy to heat up water compared to soil. When soil is wet, a portion of the incoming heat energy is used to evaporate the water, thereby reducing the overall heat absorbed by the soil.
because the soil has more energy and it has neutral
The cup of water will receive more heat energy compared to the cup of soil because water has a higher specific heat capacity than soil. This means water can absorb more heat for a given temperature change compared to soil.
Detritivores in the soil food chain do not directly get energy, but they play a crucial role in breaking down organic matter into simpler forms for decomposition by decomposers. These decomposers then release nutrients back into the soil, which can be utilized by plants for energy production.
A steeper gradient of a stream allows it to flow faster, carrying more energy that can be used to erode soil and rock more efficiently. Slower-moving streams with a gentler gradient have less energy available for erosion.
Sure, soil has energy. Since it is warmer than absolute zero (absolute zero is equal to -273o Celsius) it has heat energy. Since it has mass, it has an energy equivalent according to Einstein's famous equation, e = mc2. It contains some chemical substances which have various forms of chemical energy.
Energy enters the soil when plants decompose
Free energy of soil refers to the energy available to do work in the soil system. It is influenced by factors such as soil moisture content, temperature, and organic matter content. Understanding the free energy of soil can help in predicting nutrient availability, microbial activity, and overall soil health.
Water has a higher specific heat capacity than soil, meaning it can absorb more heat per unit mass. Therefore, water is able to absorb more heat than soil when both substances are exposed to the same amount of energy.
Soil compaction creates a physical barrier to plant roots' growth in their search for more nutrients. More of the plant's energy is used up trying to push roots through this harder layer of soil.
The cup of soil would receive less heat energy compared to the cup of water because soil has a lower heat capacity and thermal conductivity than water. This means that soil would heat up or cool down more slowly than water when exposed to the same amount of heat energy.
animals and their cells get their energy from the sun, not the soil and water.